INSPIRE: INvestigating Stellar Population In RElics III. Second data release (DR2): testing the systematics on the stellar velocity dispersion
arXiv:2302.05453 · doi:10.1051/0004-6361/202245542
Abstract
This is the second data release (DR2) of the INvestigating Stellar Population In RElics (INSPIRE) project, comprising 21 new systems with observations completed before March 2022. For each system, we release four one-dimensional (1D) spectra to the ESO Science Archive, one spectrum for each arm of the X-Shooter spectrograph. In this paper, we focus on the line-of-sight velocity distribution, measuring integrated stellar velocity dispersions from the spectra, and assessing their robustness and the associated uncertainties. For each of the 21 new systems, we systematically investigated the effect of the parameters and set-ups of the full spectral fitting on the stellar velocity dispersion () measurements. In particular, we tested how changes when several parameters of the fit as well as the resolution and spectral coverage of the input spectra are varied. We found that the effect that causes the largest systematic uncertainties on is the wavelength range used for the fit, especially for spectra with a lower signal-to-noise ratio (S/N 30). When using blue wavelengths (UVB arm) one generally underestimates the velocity dispersion (by 15 km/s). The values obtained from the near-IR (NIR) arm present a larger scatter because the quality of the spectra is lower. We finally compared our results with those in literature, finding a very good agreement overall. Joining results obtained in DR1 with those presented here, INSPIRE contains 40 ultra-compact massive galaxies, corresponding to 75% of the whole survey. By plotting these systems in a stellar mass-velocity dispersion diagram, we identify at least four highly reliable relic candidates among the new systems. Their velocity dispersion is larger than that of normal-sized galaxies of similar stellar mass.
Accepted for publication, and in press on A&A
References in corpus (13)
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- The 1% Concordance Hubble Constant
- Evolutionary stellar population synthesis with MILES - II. Scaled-solar and α-enhanced models
- The fourth data release of the Kilo-Degree Survey: ugri imaging and nine-band optical-IR photometry over 1000 square degrees
- Galaxy And Mass Assembly (GAMA): Data Release 4 and the z < 0.1 total and z < 0.08 morphological galaxy stellar mass functions
- Radial variations in the stellar initial mass function of early-type galaxies
- Superdense massive galaxies in the Nearby Universe
- The initial mass function of a massive relic galaxy
- Dozens of compact and high velocity-dispersion early-type galaxies in Sloan Digital Sky Survey
- INSPIRE: INvestigating Stellar Population In RElics -- I. Survey presentation and pilot program
- INSPIRE: INvestigating Stellar Population In RElics IV. The Initial Mass Function slope in relics
- Spatially-resolved stellar populations and kinematics with KCWI: probing the assembly history of the massive early-type galaxy NGC 1407